US7729237B2

Method of transmitting reference signal and transmitter using the same

Summary by NHIP

Gold sequence reference signal transmission

The method generates a reference signal sequence using a pseudo-random gold sequence initialized with cell identifier values and maps it to resource blocks for transmission. The gold sequence combines two m-sequences initialized with specific bit patterns and a constant Nc ranging from 1500 to 1800, where the 31-bit initial values vary with each OFDM symbol number.

Claim Score by NHIP

Read claim 13, the broadest

Abstract

A method and apparatus of transmitting a reference signal in a wireless communication system is provided. A reference signal sequence is generated by using a pseudo-random sequence. A portion or entirety of the reference signal sequence is mapped to at least one resource block and is transmitted. The pseudo-random sequence is generated by a gold sequence generator which is initialized with initial values obtained by using cell identifier. The reference signal provides low PAPR and high cross correlation characteristic.

US7729237B2, drawing sheet 1
Sheet 1 of 36

Term

2.5 yearsleft in the term

Expires 17 March 2029.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

14 claims: 3 independent, 11 dependent

  1. 1
    A method of transmitting a reference signal in a wireless communication system, the method comprising:generating a reference signal sequence which is defined by r l , n s ⁡ ( m ) = 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ ⁢ m ) ) + j ⁢ 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ ⁢ m + 1 ) ) , ⁢ m = 0 , 1 , … ⁢ , 2 ⁢ N RB max , DL - 1 where n s is a slot number within a radio frame, l is an orthogonal frequency division multiplexing (OFDM) symbol number within a slot and N RB max,DL is a maximum number of resource blocks (RBs), and c(2m) and c(2m+1) is defined by a pseudo-random sequence c(i), where i=0, 1, . . . , M max -1, and M max is a length of the pseudo-random sequence c(i), wherein the pseudo-random sequence c(i) is generated by a gold sequence generator which is initialized with initial values obtained by using (2 N ID cell +1), where N ID cell is a cell identifier;mapping a portion or entirety of the reference signal sequence to at least one RB;and transmitting a reference signal in the at least one RB.
  2. 11
    A transmitter comprising:a reference signal generator to generate a reference signal;and a transmit circuitry to transmit the reference signal, wherein the reference signal generator generates the reference signal by generating a reference signal sequence which is defined by r l , n s ⁡ ( m ) = 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ ⁢ m ) ) + j ⁢ 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ ⁢ m + 1 ) ) , ⁢ m = 0 , 1 , … ⁢ , 2 ⁢ N RB max , DL - 1 where n s is a slot number within a radio frame, l is an OFDM symbol number within a slot and N RB max,DL is a maximum number of RBs, and c(2m) and c(2m+1) is defined by a pseudo-random sequence c(i), where i=0, 1, . . . , M max − 1and M max is a length of the pseudo-random sequence c(i), wherein the pseudo-random sequence c(i) is generated by a gold sequence generator which is initialized with initial values obtained on the basis of (2 N ID cell 1), where N ID cell is a cell identifier;and mapping a portion or entirety of the reference signal sequence to at least one RB.
  3. 13
    Broadest claimClaim Score 26, narrow(NHIP)A receiver comprising:a receive circuitry to receive a reference signal and a receive signal;a channel estimator to estimate a channel by using the reference signal;and a data processor to process the receive signal by using the channel, wherein the reference signal is generated based on a reference signal sequence which is defined by r l , n s ⁡ ( m ) = 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ m ) ) + j ⁢ 1 2 ⁢ ( 1 - 2 · c ⁡ ( 2 ⁢ m + 1 ) ) , ⁢ m = 0 , 1 , … ⁢ , 2 ⁢ N RB max , DL - 1 where n s is a slot number within a radio frame, l is an OFDM symbol number within a slot and N RB max,DL is a maximum number of RBs, and c(2m) and c(2m+1) is defined by a pseudo-random sequence c(i), where i=0, 1, . . . , M max − 1, and M max is a length of the pseudo-random sequence c(i), wherein the pseudo-random sequence c(i) is generated by a gold sequence generator which is initialized with initial values obtained on the basis of (2 N ID cell 1), where N ID cell is a cell identifier.